ssi.c 25.4 KB
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/*
 * Renesas R-Car SSIU/SSI support
 *
 * Copyright (C) 2013 Renesas Solutions Corp.
 * Kuninori Morimoto <kuninori.morimoto.gx@renesas.com>
 *
 * Based on fsi.c
 * Kuninori Morimoto <morimoto.kuninori@renesas.com>
 *
 * This program is free software; you can redistribute it and/or modify
 * it under the terms of the GNU General Public License version 2 as
 * published by the Free Software Foundation.
 */
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#include <sound/simple_card_utils.h>
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#include <linux/delay.h>
#include "rsnd.h"
#define RSND_SSI_NAME_SIZE 16

/*
 * SSICR
 */
#define	FORCE		(1 << 31)	/* Fixed */
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#define	DMEN		(1 << 28)	/* DMA Enable */
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#define	UIEN		(1 << 27)	/* Underflow Interrupt Enable */
#define	OIEN		(1 << 26)	/* Overflow Interrupt Enable */
#define	IIEN		(1 << 25)	/* Idle Mode Interrupt Enable */
#define	DIEN		(1 << 24)	/* Data Interrupt Enable */
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#define	CHNL_4		(1 << 22)	/* Channels */
#define	CHNL_6		(2 << 22)	/* Channels */
#define	CHNL_8		(3 << 22)	/* Channels */
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#define	DWL_8		(0 << 19)	/* Data Word Length */
#define	DWL_16		(1 << 19)	/* Data Word Length */
#define	DWL_18		(2 << 19)	/* Data Word Length */
#define	DWL_20		(3 << 19)	/* Data Word Length */
#define	DWL_22		(4 << 19)	/* Data Word Length */
#define	DWL_24		(5 << 19)	/* Data Word Length */
#define	DWL_32		(6 << 19)	/* Data Word Length */

#define	SWL_32		(3 << 16)	/* R/W System Word Length */
#define	SCKD		(1 << 15)	/* Serial Bit Clock Direction */
#define	SWSD		(1 << 14)	/* Serial WS Direction */
#define	SCKP		(1 << 13)	/* Serial Bit Clock Polarity */
#define	SWSP		(1 << 12)	/* Serial WS Polarity */
#define	SDTA		(1 << 10)	/* Serial Data Alignment */
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#define	PDTA		(1 <<  9)	/* Parallel Data Alignment */
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#define	DEL		(1 <<  8)	/* Serial Data Delay */
#define	CKDV(v)		(v <<  4)	/* Serial Clock Division Ratio */
#define	TRMD		(1 <<  1)	/* Transmit/Receive Mode Select */
#define	EN		(1 <<  0)	/* SSI Module Enable */

/*
 * SSISR
 */
#define	UIRQ		(1 << 27)	/* Underflow Error Interrupt Status */
#define	OIRQ		(1 << 26)	/* Overflow Error Interrupt Status */
#define	IIRQ		(1 << 25)	/* Idle Mode Interrupt Status */
#define	DIRQ		(1 << 24)	/* Data Interrupt Status Flag */

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/*
 * SSIWSR
 */
#define CONT		(1 << 8)	/* WS Continue Function */
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#define WS_MODE		(1 << 0)	/* WS Mode */
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#define SSI_NAME "ssi"

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struct rsnd_ssi {
	struct rsnd_mod mod;
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	struct rsnd_mod *dma;
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	u32 flags;
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	u32 cr_own;
	u32 cr_clk;
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	u32 cr_mode;
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	u32 cr_en;
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	u32 wsr;
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	int chan;
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	int rate;
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	int irq;
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	unsigned int usrcnt;
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	int byte_pos;
	int period_pos;
	int byte_per_period;
	int next_period_byte;
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};

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/* flags */
#define RSND_SSI_CLK_PIN_SHARE		(1 << 0)
#define RSND_SSI_NO_BUSIF		(1 << 1) /* SSI+DMA without BUSIF */
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#define RSND_SSI_HDMI0			(1 << 2) /* for HDMI0 */
#define RSND_SSI_HDMI1			(1 << 3) /* for HDMI1 */
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#define RSND_SSI_PROBED			(1 << 4)
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#define for_each_rsnd_ssi(pos, priv, i)					\
	for (i = 0;							\
	     (i < rsnd_ssi_nr(priv)) &&					\
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		((pos) = ((struct rsnd_ssi *)(priv)->ssi + i));		\
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	     i++)

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#define rsnd_ssi_get(priv, id) ((struct rsnd_ssi *)(priv->ssi) + id)
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#define rsnd_ssi_nr(priv) ((priv)->ssi_nr)
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#define rsnd_mod_to_ssi(_mod) container_of((_mod), struct rsnd_ssi, mod)
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#define rsnd_ssi_is_parent(ssi, io) ((ssi) == rsnd_io_to_mod_ssip(io))
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#define rsnd_ssi_is_multi_slave(mod, io) \
	(rsnd_ssi_multi_slaves(io) & (1 << rsnd_mod_id(mod)))
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#define rsnd_ssi_is_run_mods(mod, io) \
	(rsnd_ssi_run_mods(io) & (1 << rsnd_mod_id(mod)))
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#define rsnd_ssi_can_output_clk(mod) (!__rsnd_ssi_is_pin_sharing(mod))
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int rsnd_ssi_hdmi_port(struct rsnd_dai_stream *io)
{
	struct rsnd_mod *mod = rsnd_io_to_mod_ssi(io);
	struct rsnd_ssi *ssi = rsnd_mod_to_ssi(mod);

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	if (rsnd_flags_has(ssi, RSND_SSI_HDMI0))
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		return RSND_SSI_HDMI_PORT0;

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	if (rsnd_flags_has(ssi, RSND_SSI_HDMI1))
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		return RSND_SSI_HDMI_PORT1;

	return 0;
}

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int rsnd_ssi_use_busif(struct rsnd_dai_stream *io)
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{
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	struct rsnd_mod *mod = rsnd_io_to_mod_ssi(io);
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	struct rsnd_ssi *ssi = rsnd_mod_to_ssi(mod);
	int use_busif = 0;

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	if (!rsnd_ssi_is_dma_mode(mod))
		return 0;

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	if (!(rsnd_flags_has(ssi, RSND_SSI_NO_BUSIF)))
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		use_busif = 1;
	if (rsnd_io_to_mod_src(io))
		use_busif = 1;

	return use_busif;
}

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static void rsnd_ssi_status_clear(struct rsnd_mod *mod)
{
	rsnd_mod_write(mod, SSISR, 0);
}

static u32 rsnd_ssi_status_get(struct rsnd_mod *mod)
{
	return rsnd_mod_read(mod, SSISR);
}

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static void rsnd_ssi_status_check(struct rsnd_mod *mod,
				  u32 bit)
{
	struct rsnd_priv *priv = rsnd_mod_to_priv(mod);
	struct device *dev = rsnd_priv_to_dev(priv);
	u32 status;
	int i;

	for (i = 0; i < 1024; i++) {
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		status = rsnd_ssi_status_get(mod);
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		if (status & bit)
			return;

		udelay(50);
	}

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	dev_warn(dev, "%s[%d] status check failed\n",
		 rsnd_mod_name(mod), rsnd_mod_id(mod));
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}

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static u32 rsnd_ssi_multi_slaves(struct rsnd_dai_stream *io)
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{
	struct rsnd_mod *mod;
	enum rsnd_mod_type types[] = {
		RSND_MOD_SSIM1,
		RSND_MOD_SSIM2,
		RSND_MOD_SSIM3,
	};
	int i, mask;

	mask = 0;
	for (i = 0; i < ARRAY_SIZE(types); i++) {
		mod = rsnd_io_to_mod(io, types[i]);
		if (!mod)
			continue;

		mask |= 1 << rsnd_mod_id(mod);
	}

	return mask;
}

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static u32 rsnd_ssi_run_mods(struct rsnd_dai_stream *io)
{
	struct rsnd_mod *ssi_mod = rsnd_io_to_mod_ssi(io);
	struct rsnd_mod *ssi_parent_mod = rsnd_io_to_mod_ssip(io);

	return rsnd_ssi_multi_slaves_runtime(io) |
		1 << rsnd_mod_id(ssi_mod) |
		1 << rsnd_mod_id(ssi_parent_mod);
}

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u32 rsnd_ssi_multi_slaves_runtime(struct rsnd_dai_stream *io)
{
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	if (rsnd_runtime_is_ssi_multi(io))
		return rsnd_ssi_multi_slaves(io);
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	return 0;
}

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unsigned int rsnd_ssi_clk_query(struct rsnd_priv *priv,
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		       int param1, int param2, int *idx)
{
	int ssi_clk_mul_table[] = {
		1, 2, 4, 8, 16, 6, 12,
	};
	int j, ret;
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	unsigned int main_rate;
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	for (j = 0; j < ARRAY_SIZE(ssi_clk_mul_table); j++) {

		/*
		 * It will set SSIWSR.CONT here, but SSICR.CKDV = 000
		 * with it is not allowed. (SSIWSR.WS_MODE with
		 * SSICR.CKDV = 000 is not allowed either).
		 * Skip it. See SSICR.CKDV
		 */
		if (j == 0)
			continue;

		/*
		 * this driver is assuming that
		 * system word is 32bit x chan
		 * see rsnd_ssi_init()
		 */
		main_rate = 32 * param1 * param2 * ssi_clk_mul_table[j];

		ret = rsnd_adg_clk_query(priv, main_rate);
		if (ret < 0)
			continue;

		if (idx)
			*idx = j;

		return main_rate;
	}

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	return 0;
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}

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static int rsnd_ssi_master_clk_start(struct rsnd_mod *mod,
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				     struct rsnd_dai_stream *io)
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{
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	struct rsnd_priv *priv = rsnd_io_to_priv(io);
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	struct device *dev = rsnd_priv_to_dev(priv);
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	struct rsnd_dai *rdai = rsnd_io_to_rdai(io);
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	struct rsnd_ssi *ssi = rsnd_mod_to_ssi(mod);
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	int chan = rsnd_runtime_channel_for_ssi(io);
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	int idx, ret;
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	unsigned int main_rate;
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	unsigned int rate = rsnd_io_is_play(io) ?
		rsnd_src_get_out_rate(priv, io) :
		rsnd_src_get_in_rate(priv, io);
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	if (!rsnd_rdai_is_clk_master(rdai))
		return 0;

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	if (!rsnd_ssi_can_output_clk(mod))
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		return 0;

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	if (rsnd_ssi_is_multi_slave(mod, io))
		return 0;

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	if (ssi->usrcnt > 1) {
		if (ssi->rate != rate) {
			dev_err(dev, "SSI parent/child should use same rate\n");
			return -EINVAL;
		}

		return 0;
	}

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	main_rate = rsnd_ssi_clk_query(priv, rate, chan, &idx);
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	if (!main_rate) {
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		dev_err(dev, "unsupported clock rate\n");
		return -EIO;
	}
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	ret = rsnd_adg_ssi_clk_try_start(mod, main_rate);
	if (ret < 0)
		return ret;
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	/*
	 * SSI clock will be output contiguously
	 * by below settings.
	 * This means, rsnd_ssi_master_clk_start()
	 * and rsnd_ssi_register_setup() are necessary
	 * for SSI parent
	 *
	 * SSICR  : FORCE, SCKD, SWSD
	 * SSIWSR : CONT
	 */
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	ssi->cr_clk = FORCE | SWL_32 | SCKD | SWSD | CKDV(idx);
	ssi->wsr = CONT;
	ssi->rate = rate;
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	dev_dbg(dev, "%s[%d] outputs %u Hz\n",
		rsnd_mod_name(mod),
		rsnd_mod_id(mod), rate);
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	return 0;
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}

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static void rsnd_ssi_master_clk_stop(struct rsnd_mod *mod,
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				     struct rsnd_dai_stream *io)
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{
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	struct rsnd_dai *rdai = rsnd_io_to_rdai(io);
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	struct rsnd_ssi *ssi = rsnd_mod_to_ssi(mod);
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	if (!rsnd_rdai_is_clk_master(rdai))
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		return;

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	if (!rsnd_ssi_can_output_clk(mod))
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		return;
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	if (ssi->usrcnt > 1)
		return;
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	ssi->cr_clk	= 0;
	ssi->rate	= 0;
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	rsnd_adg_ssi_clk_stop(mod);
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}

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static void rsnd_ssi_config_init(struct rsnd_mod *mod,
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				struct rsnd_dai_stream *io)
{
	struct rsnd_dai *rdai = rsnd_io_to_rdai(io);
	struct snd_pcm_runtime *runtime = rsnd_io_to_runtime(io);
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	struct rsnd_ssi *ssi = rsnd_mod_to_ssi(mod);
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	u32 cr_own;
	u32 cr_mode;
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	u32 wsr;
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	int is_tdm;

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	if (rsnd_ssi_is_parent(mod, io))
		return;

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	is_tdm = rsnd_runtime_is_ssi_tdm(io);
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	/*
	 * always use 32bit system word.
	 * see also rsnd_ssi_master_clk_enable()
	 */
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	cr_own = FORCE | SWL_32;
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	if (rdai->bit_clk_inv)
		cr_own |= SCKP;
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	if (rdai->frm_clk_inv ^ is_tdm)
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		cr_own |= SWSP;
	if (rdai->data_alignment)
		cr_own |= SDTA;
	if (rdai->sys_delay)
		cr_own |= DEL;
	if (rsnd_io_is_play(io))
		cr_own |= TRMD;

	switch (runtime->sample_bits) {
	case 16:
		cr_own |= DWL_16;
		break;
	case 32:
		cr_own |= DWL_24;
		break;
	}

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	if (rsnd_ssi_is_dma_mode(mod)) {
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		cr_mode = UIEN | OIEN |	/* over/under run */
			  DMEN;		/* DMA : enable DMA */
	} else {
		cr_mode = DIEN;		/* PIO : enable Data interrupt */
	}

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	/*
	 * TDM Extend Mode
	 * see
	 *	rsnd_ssiu_init_gen2()
	 */
	wsr = ssi->wsr;
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	if (is_tdm) {
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		wsr	|= WS_MODE;
		cr_own	|= CHNL_8;
	}

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	ssi->cr_own	= cr_own;
	ssi->cr_mode	= cr_mode;
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	ssi->wsr	= wsr;
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}
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static void rsnd_ssi_register_setup(struct rsnd_mod *mod)
{
	struct rsnd_ssi *ssi = rsnd_mod_to_ssi(mod);

	rsnd_mod_write(mod, SSIWSR,	ssi->wsr);
	rsnd_mod_write(mod, SSICR,	ssi->cr_own	|
					ssi->cr_clk	|
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					ssi->cr_mode	|
					ssi->cr_en);
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}

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static void rsnd_ssi_pointer_init(struct rsnd_mod *mod,
				  struct rsnd_dai_stream *io)
{
	struct rsnd_ssi *ssi = rsnd_mod_to_ssi(mod);
	struct snd_pcm_runtime *runtime = rsnd_io_to_runtime(io);

	ssi->byte_pos		= 0;
	ssi->period_pos		= 0;
	ssi->byte_per_period	= runtime->period_size *
				  runtime->channels *
				  samples_to_bytes(runtime, 1);
	ssi->next_period_byte	= ssi->byte_per_period;
}

static int rsnd_ssi_pointer_offset(struct rsnd_mod *mod,
				   struct rsnd_dai_stream *io,
				   int additional)
{
	struct rsnd_ssi *ssi = rsnd_mod_to_ssi(mod);
	struct snd_pcm_runtime *runtime = rsnd_io_to_runtime(io);
	int pos = ssi->byte_pos + additional;

	pos %= (runtime->periods * ssi->byte_per_period);

	return pos;
}

static bool rsnd_ssi_pointer_update(struct rsnd_mod *mod,
				    struct rsnd_dai_stream *io,
				    int byte)
{
	struct rsnd_ssi *ssi = rsnd_mod_to_ssi(mod);

	ssi->byte_pos += byte;

	if (ssi->byte_pos >= ssi->next_period_byte) {
		struct snd_pcm_runtime *runtime = rsnd_io_to_runtime(io);

		ssi->period_pos++;
		ssi->next_period_byte += ssi->byte_per_period;

		if (ssi->period_pos >= runtime->periods) {
			ssi->byte_pos = 0;
			ssi->period_pos = 0;
			ssi->next_period_byte = ssi->byte_per_period;
		}

		return true;
	}

	return false;
}

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/*
 *	SSI mod common functions
 */
static int rsnd_ssi_init(struct rsnd_mod *mod,
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			 struct rsnd_dai_stream *io,
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			 struct rsnd_priv *priv)
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{
	struct rsnd_ssi *ssi = rsnd_mod_to_ssi(mod);
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	int ret;

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	if (!rsnd_ssi_is_run_mods(mod, io))
		return 0;

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	rsnd_ssi_pointer_init(mod, io);

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	ssi->usrcnt++;

	rsnd_mod_power_on(mod);

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	ret = rsnd_ssi_master_clk_start(mod, io);
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	if (ret < 0)
		return ret;

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	rsnd_ssi_config_init(mod, io);
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	rsnd_ssi_register_setup(mod);
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	/* clear error status */
	rsnd_ssi_status_clear(mod);

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	return 0;
}

static int rsnd_ssi_quit(struct rsnd_mod *mod,
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			 struct rsnd_dai_stream *io,
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			 struct rsnd_priv *priv)
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{
	struct rsnd_ssi *ssi = rsnd_mod_to_ssi(mod);
	struct device *dev = rsnd_priv_to_dev(priv);

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	if (!rsnd_ssi_is_run_mods(mod, io))
		return 0;

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	if (!ssi->usrcnt) {
		dev_err(dev, "%s[%d] usrcnt error\n",
			rsnd_mod_name(mod), rsnd_mod_id(mod));
		return -EIO;
	}
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	if (!rsnd_ssi_is_parent(mod, io))
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		ssi->cr_own	= 0;
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	rsnd_ssi_master_clk_stop(mod, io);
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	rsnd_mod_power_off(mod);

	ssi->usrcnt--;

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	return 0;
}

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static int rsnd_ssi_hw_params(struct rsnd_mod *mod,
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			      struct rsnd_dai_stream *io,
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			      struct snd_pcm_substream *substream,
			      struct snd_pcm_hw_params *params)
{
	struct rsnd_ssi *ssi = rsnd_mod_to_ssi(mod);
	int chan = params_channels(params);

	/*
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	 * snd_pcm_ops::hw_params will be called *before*
	 * snd_soc_dai_ops::trigger. Thus, ssi->usrcnt is 0
	 * in 1st call.
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	 */
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	if (ssi->usrcnt) {
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		/*
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		 * Already working.
		 * It will happen if SSI has parent/child connection.
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		 * it is error if child <-> parent SSI uses
		 * different channels.
		 */
		if (ssi->chan != chan)
			return -EIO;
	}

	ssi->chan = chan;

	return 0;
}

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static int rsnd_ssi_start(struct rsnd_mod *mod,
			  struct rsnd_dai_stream *io,
			  struct rsnd_priv *priv)
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{
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	struct rsnd_ssi *ssi = rsnd_mod_to_ssi(mod);

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	if (!rsnd_ssi_is_run_mods(mod, io))
		return 0;

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	/*
	 * EN will be set via SSIU :: SSI_CONTROL
	 * if Multi channel mode
	 */
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	if (rsnd_ssi_multi_slaves_runtime(io))
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		return 0;
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	/*
	 * EN is for data output.
	 * SSI parent EN is not needed.
	 */
	if (rsnd_ssi_is_parent(mod, io))
		return 0;

	ssi->cr_en = EN;

	rsnd_mod_write(mod, SSICR,	ssi->cr_own	|
					ssi->cr_clk	|
					ssi->cr_mode	|
					ssi->cr_en);
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	return 0;
}

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static int rsnd_ssi_stop(struct rsnd_mod *mod,
			 struct rsnd_dai_stream *io,
			 struct rsnd_priv *priv)
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{
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	struct rsnd_ssi *ssi = rsnd_mod_to_ssi(mod);
	u32 cr;

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	if (!rsnd_ssi_is_run_mods(mod, io))
		return 0;

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	if (rsnd_ssi_is_parent(mod, io))
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		return 0;
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	cr  =	ssi->cr_own	|
		ssi->cr_clk;
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	/*
	 * disable all IRQ,
	 * Playback: Wait all data was sent
	 * Capture:  It might not receave data. Do nothing
	 */
	if (rsnd_io_is_play(io)) {
		rsnd_mod_write(mod, SSICR, cr | EN);
		rsnd_ssi_status_check(mod, DIRQ);
	}
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	/*
	 * disable SSI,
	 * and, wait idle state
	 */
	rsnd_mod_write(mod, SSICR, cr);	/* disabled all */
	rsnd_ssi_status_check(mod, IIRQ);
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	ssi->cr_en = 0;

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	return 0;
}

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static int rsnd_ssi_irq(struct rsnd_mod *mod,
			struct rsnd_dai_stream *io,
			struct rsnd_priv *priv,
			int enable)
{
	u32 val = 0;

	if (rsnd_is_gen1(priv))
		return 0;

	if (rsnd_ssi_is_parent(mod, io))
		return 0;

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	if (!rsnd_ssi_is_run_mods(mod, io))
		return 0;

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	if (enable)
		val = rsnd_ssi_is_dma_mode(mod) ? 0x0e000000 : 0x0f000000;

	rsnd_mod_write(mod, SSI_INT_ENABLE, val);

	return 0;
}

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static void __rsnd_ssi_interrupt(struct rsnd_mod *mod,
				 struct rsnd_dai_stream *io)
652
{
653
	struct rsnd_priv *priv = rsnd_mod_to_priv(mod);
654
	int is_dma = rsnd_ssi_is_dma_mode(mod);
655
	u32 status;
656
	bool elapsed = false;
657
	bool stop = false;
658 659

	spin_lock(&priv->lock);
660

661
	/* ignore all cases if not working */
662
	if (!rsnd_io_is_working(io))
663 664
		goto rsnd_ssi_interrupt_out;

665
	status = rsnd_ssi_status_get(mod);
666 667

	/* PIO only */
668
	if (!is_dma && (status & DIRQ)) {
669 670
		struct snd_pcm_runtime *runtime = rsnd_io_to_runtime(io);
		u32 *buf = (u32 *)(runtime->dma_area +
671
				   rsnd_ssi_pointer_offset(mod, io, 0));
672 673 674 675 676 677 678
		int shift = 0;

		switch (runtime->sample_bits) {
		case 32:
			shift = 8;
			break;
		}
679 680 681 682 683 684

		/*
		 * 8/16/32 data can be assesse to TDR/RDR register
		 * directly as 32bit data
		 * see rsnd_ssi_init()
		 */
685
		if (rsnd_io_is_play(io))
686
			rsnd_mod_write(mod, SSITDR, (*buf) << shift);
687
		else
688
			*buf = (rsnd_mod_read(mod, SSIRDR) >> shift);
689

690
		elapsed = rsnd_ssi_pointer_update(mod, io, sizeof(*buf));
691
	}
692

693
	/* DMA only */
694 695
	if (is_dma && (status & (UIRQ | OIRQ)))
		stop = true;
696

697
	rsnd_ssi_status_clear(mod);
698 699 700
rsnd_ssi_interrupt_out:
	spin_unlock(&priv->lock);

701 702
	if (elapsed)
		rsnd_dai_period_elapsed(io);
703 704 705 706

	if (stop)
		snd_pcm_stop_xrun(io->substream);

707 708 709 710 711 712 713
}

static irqreturn_t rsnd_ssi_interrupt(int irq, void *data)
{
	struct rsnd_mod *mod = data;

	rsnd_mod_interrupt(mod, __rsnd_ssi_interrupt);
714

715
	return IRQ_HANDLED;
716 717
}

718 719 720
/*
 *		SSI PIO
 */
721
static void rsnd_ssi_parent_attach(struct rsnd_mod *mod,
722
				   struct rsnd_dai_stream *io)
723
{
724 725 726
	struct rsnd_dai *rdai = rsnd_io_to_rdai(io);
	struct rsnd_priv *priv = rsnd_mod_to_priv(mod);

727 728 729
	if (!__rsnd_ssi_is_pin_sharing(mod))
		return;

730 731 732
	if (!rsnd_rdai_is_clk_master(rdai))
		return;

733 734 735 736 737 738 739 740 741 742 743 744 745 746
	switch (rsnd_mod_id(mod)) {
	case 1:
	case 2:
		rsnd_dai_connect(rsnd_ssi_mod_get(priv, 0), io, RSND_MOD_SSIP);
		break;
	case 4:
		rsnd_dai_connect(rsnd_ssi_mod_get(priv, 3), io, RSND_MOD_SSIP);
		break;
	case 8:
		rsnd_dai_connect(rsnd_ssi_mod_get(priv, 7), io, RSND_MOD_SSIP);
		break;
	}
}

747 748 749 750 751 752 753 754 755 756 757 758 759 760
static int rsnd_ssi_pcm_new(struct rsnd_mod *mod,
			    struct rsnd_dai_stream *io,
			    struct snd_soc_pcm_runtime *rtd)
{
	/*
	 * rsnd_rdai_is_clk_master() will be enabled after set_fmt,
	 * and, pcm_new will be called after it.
	 * This function reuse pcm_new at this point.
	 */
	rsnd_ssi_parent_attach(mod, io);

	return 0;
}

761 762 763
static int rsnd_ssi_common_probe(struct rsnd_mod *mod,
				 struct rsnd_dai_stream *io,
				 struct rsnd_priv *priv)
764 765 766 767 768
{
	struct device *dev = rsnd_priv_to_dev(priv);
	struct rsnd_ssi *ssi = rsnd_mod_to_ssi(mod);
	int ret;

769 770 771 772 773 774 775
	/*
	 * SSIP/SSIU/IRQ are not needed on
	 * SSI Multi slaves
	 */
	if (rsnd_ssi_is_multi_slave(mod, io))
		return 0;

776 777 778 779
	/*
	 * It can't judge ssi parent at this point
	 * see rsnd_ssi_pcm_new()
	 */
780

781 782 783 784
	ret = rsnd_ssiu_attach(io, mod);
	if (ret < 0)
		return ret;

785 786 787
	/*
	 * SSI might be called again as PIO fallback
	 * It is easy to manual handling for IRQ request/free
788 789 790 791 792 793 794
	 *
	 * OTOH, this function might be called many times if platform is
	 * using MIX. It needs xxx_attach() many times on xxx_probe().
	 * Because of it, we can't control .probe/.remove calling count by
	 * mod->status.
	 * But it don't need to call request_irq() many times.
	 * Let's control it by RSND_SSI_PROBED flag.
795
	 */
796
	if (!rsnd_flags_has(ssi, RSND_SSI_PROBED)) {
797 798 799 800 801
		ret = request_irq(ssi->irq,
				  rsnd_ssi_interrupt,
				  IRQF_SHARED,
				  dev_name(dev), mod);

802
		rsnd_flags_set(ssi, RSND_SSI_PROBED);
803
	}
804

805 806 807
	return ret;
}

808 809 810 811 812 813 814 815 816 817 818 819
static int rsnd_ssi_common_remove(struct rsnd_mod *mod,
				  struct rsnd_dai_stream *io,
				  struct rsnd_priv *priv)
{
	struct rsnd_ssi *ssi = rsnd_mod_to_ssi(mod);
	struct rsnd_mod *pure_ssi_mod = rsnd_io_to_mod_ssi(io);

	/* Do nothing if non SSI (= SSI parent, multi SSI) mod */
	if (pure_ssi_mod != mod)
		return 0;

	/* PIO will request IRQ again */
820
	if (rsnd_flags_has(ssi, RSND_SSI_PROBED)) {
821 822
		free_irq(ssi->irq, mod);

823
		rsnd_flags_del(ssi, RSND_SSI_PROBED);
824
	}
825 826 827 828

	return 0;
}

829 830 831 832
static int rsnd_ssi_pointer(struct rsnd_mod *mod,
			    struct rsnd_dai_stream *io,
			    snd_pcm_uframes_t *pointer)
{
833
	struct rsnd_ssi *ssi = rsnd_mod_to_ssi(mod);
834 835
	struct snd_pcm_runtime *runtime = rsnd_io_to_runtime(io);

836
	*pointer = bytes_to_frames(runtime, ssi->byte_pos);
837 838 839 840

	return 0;
}

841
static struct rsnd_mod_ops rsnd_ssi_pio_ops = {
842
	.name	= SSI_NAME,
843
	.probe	= rsnd_ssi_common_probe,
844
	.remove	= rsnd_ssi_common_remove,
845 846
	.init	= rsnd_ssi_init,
	.quit	= rsnd_ssi_quit,
847 848
	.start	= rsnd_ssi_start,
	.stop	= rsnd_ssi_stop,
849
	.irq	= rsnd_ssi_irq,
850
	.pointer= rsnd_ssi_pointer,
851
	.pcm_new = rsnd_ssi_pcm_new,
852
	.hw_params = rsnd_ssi_hw_params,
853 854
};

855
static int rsnd_ssi_dma_probe(struct rsnd_mod *mod,
856
			      struct rsnd_dai_stream *io,
857
			      struct rsnd_priv *priv)
858 859 860 861
{
	struct rsnd_ssi *ssi = rsnd_mod_to_ssi(mod);
	int ret;

862 863 864 865 866 867 868
	/*
	 * SSIP/SSIU/IRQ/DMA are not needed on
	 * SSI Multi slaves
	 */
	if (rsnd_ssi_is_multi_slave(mod, io))
		return 0;

869
	ret = rsnd_ssi_common_probe(mod, io, priv);
870
	if (ret)
871
		return ret;
872

873
	/* SSI probe might be called many times in MUX multi path */
874
	ret = rsnd_dma_attach(io, mod, &ssi->dma);
875

876 877 878
	return ret;
}

879
static int rsnd_ssi_fallback(struct rsnd_mod *mod,
880
			     struct rsnd_dai_stream *io,
881
			     struct rsnd_priv *priv)
882
{
883 884 885 886 887 888 889 890 891 892 893 894 895 896
	struct device *dev = rsnd_priv_to_dev(priv);

	/*
	 * fallback to PIO
	 *
	 * SSI .probe might be called again.
	 * see
	 *	rsnd_rdai_continuance_probe()
	 */
	mod->ops = &rsnd_ssi_pio_ops;

	dev_info(dev, "%s[%d] fallback to PIO mode\n",
		 rsnd_mod_name(mod), rsnd_mod_id(mod));

897 898 899
	return 0;
}

900 901
static struct dma_chan *rsnd_ssi_dma_req(struct rsnd_dai_stream *io,
					 struct rsnd_mod *mod)
902
{
903 904 905 906
	struct rsnd_priv *priv = rsnd_mod_to_priv(mod);
	int is_play = rsnd_io_is_play(io);
	char *name;

907
	if (rsnd_ssi_use_busif(io))
908 909 910 911 912 913
		name = is_play ? "rxu" : "txu";
	else
		name = is_play ? "rx" : "tx";

	return rsnd_dma_request_channel(rsnd_ssi_of_node(priv),
					mod, name);
914 915
}

916
static struct rsnd_mod_ops rsnd_ssi_dma_ops = {
917
	.name	= SSI_NAME,
918
	.dma_req = rsnd_ssi_dma_req,
919
	.probe	= rsnd_ssi_dma_probe,
920
	.remove	= rsnd_ssi_common_remove,
921 922
	.init	= rsnd_ssi_init,
	.quit	= rsnd_ssi_quit,
923 924
	.start	= rsnd_ssi_start,
	.stop	= rsnd_ssi_stop,
925
	.irq	= rsnd_ssi_irq,
926
	.pcm_new = rsnd_ssi_pcm_new,
927
	.fallback = rsnd_ssi_fallback,
928
	.hw_params = rsnd_ssi_hw_params,
929 930
};

931 932 933 934 935 936
int rsnd_ssi_is_dma_mode(struct rsnd_mod *mod)
{
	return mod->ops == &rsnd_ssi_dma_ops;
}


937 938 939
/*
 *		ssi mod function
 */
940 941 942 943 944 945 946 947 948 949 950 951 952 953 954 955 956 957
static void rsnd_ssi_connect(struct rsnd_mod *mod,
			     struct rsnd_dai_stream *io)
{
	struct rsnd_dai *rdai = rsnd_io_to_rdai(io);
	enum rsnd_mod_type types[] = {
		RSND_MOD_SSI,
		RSND_MOD_SSIM1,
		RSND_MOD_SSIM2,
		RSND_MOD_SSIM3,
	};
	enum rsnd_mod_type type;
	int i;

	/* try SSI -> SSIM1 -> SSIM2 -> SSIM3 */
	for (i = 0; i < ARRAY_SIZE(types); i++) {
		type = types[i];
		if (!rsnd_io_to_mod(io, type)) {
			rsnd_dai_connect(mod, io, type);
958 959
			rsnd_rdai_channels_set(rdai, (i + 1) * 2);
			rsnd_rdai_ssi_lane_set(rdai, (i + 1));
960 961 962 963 964 965 966 967 968 969 970 971 972 973 974 975 976 977 978 979 980 981 982 983 984 985 986 987 988 989 990 991
			return;
		}
	}
}

void rsnd_parse_connect_ssi(struct rsnd_dai *rdai,
			    struct device_node *playback,
			    struct device_node *capture)
{
	struct rsnd_priv *priv = rsnd_rdai_to_priv(rdai);
	struct device_node *node;
	struct device_node *np;
	struct rsnd_mod *mod;
	int i;

	node = rsnd_ssi_of_node(priv);
	if (!node)
		return;

	i = 0;
	for_each_child_of_node(node, np) {
		mod = rsnd_ssi_mod_get(priv, i);
		if (np == playback)
			rsnd_ssi_connect(mod, &rdai->playback);
		if (np == capture)
			rsnd_ssi_connect(mod, &rdai->capture);
		i++;
	}

	of_node_put(node);
}

992 993 994 995 996 997 998 999 1000 1001 1002 1003 1004 1005
static void __rsnd_ssi_parse_hdmi_connection(struct rsnd_priv *priv,
					     struct rsnd_dai_stream *io,
					     struct device_node *remote_ep)
{
	struct device *dev = rsnd_priv_to_dev(priv);
	struct rsnd_mod *mod = rsnd_io_to_mod_ssi(io);
	struct rsnd_ssi *ssi;

	if (!mod)
		return;

	ssi  = rsnd_mod_to_ssi(mod);

	if (strstr(remote_ep->full_name, "hdmi0")) {
1006
		rsnd_flags_set(ssi, RSND_SSI_HDMI0);
1007 1008 1009 1010 1011
		dev_dbg(dev, "%s[%d] connected to HDMI0\n",
			 rsnd_mod_name(mod), rsnd_mod_id(mod));
	}

	if (strstr(remote_ep->full_name, "hdmi1")) {
1012
		rsnd_flags_set(ssi, RSND_SSI_HDMI1);
1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023 1024 1025 1026 1027 1028 1029 1030 1031 1032
		dev_dbg(dev, "%s[%d] connected to HDMI1\n",
			rsnd_mod_name(mod), rsnd_mod_id(mod));
	}
}

void rsnd_ssi_parse_hdmi_connection(struct rsnd_priv *priv,
				    struct device_node *endpoint,
				    int dai_i)
{
	struct rsnd_dai *rdai = rsnd_rdai_get(priv, dai_i);
	struct device_node *remote_ep;

	remote_ep = of_graph_get_remote_endpoint(endpoint);
	if (!remote_ep)
		return;

	__rsnd_ssi_parse_hdmi_connection(priv, &rdai->playback, remote_ep);
	__rsnd_ssi_parse_hdmi_connection(priv, &rdai->capture,  remote_ep);
}

1033 1034
struct rsnd_mod *rsnd_ssi_mod_get(struct rsnd_priv *priv, int id)
{
1035 1036
	if (WARN_ON(id < 0 || id >= rsnd_ssi_nr(priv)))
		id = 0;
1037

1038
	return rsnd_mod_get(rsnd_ssi_get(priv, id));
1039 1040
}

1041
int __rsnd_ssi_is_pin_sharing(struct rsnd_mod *mod)
1042 1043 1044
{
	struct rsnd_ssi *ssi = rsnd_mod_to_ssi(mod);

1045
	return !!(rsnd_flags_has(ssi, RSND_SSI_CLK_PIN_SHARE));
1046 1047
}

1048 1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076 1077 1078 1079 1080 1081 1082
static u32 *rsnd_ssi_get_status(struct rsnd_dai_stream *io,
				struct rsnd_mod *mod,
				enum rsnd_mod_type type)
{
	/*
	 * SSIP (= SSI parent) needs to be special, otherwise,
	 * 2nd SSI might doesn't start. see also rsnd_mod_call()
	 *
	 * We can't include parent SSI status on SSI, because we don't know
	 * how many SSI requests parent SSI. Thus, it is localed on "io" now.
	 * ex) trouble case
	 *	Playback: SSI0
	 *	Capture : SSI1 (needs SSI0)
	 *
	 * 1) start Capture  ->	SSI0/SSI1 are started.
	 * 2) start Playback ->	SSI0 doesn't work, because it is already
	 *			marked as "started" on 1)
	 *
	 * OTOH, using each mod's status is good for MUX case.
	 * It doesn't need to start in 2nd start
	 * ex)
	 *	IO-0: SRC0 -> CTU1 -+-> MUX -> DVC -> SSIU -> SSI0
	 *			    |
	 *	IO-1: SRC1 -> CTU2 -+
	 *
	 * 1) start IO-0 ->	start SSI0
	 * 2) start IO-1 ->	SSI0 doesn't need to start, because it is
	 *			already started on 1)
	 */
	if (type == RSND_MOD_SSIP)
		return &io->parent_ssi_status;

	return rsnd_mod_get_status(io, mod, type);
}

1083
int rsnd_ssi_probe(struct rsnd_priv *priv)
1084
{
1085 1086
	struct device_node *node;
	struct device_node *np;
1087 1088 1089 1090 1091
	struct device *dev = rsnd_priv_to_dev(priv);
	struct rsnd_mod_ops *ops;
	struct clk *clk;
	struct rsnd_ssi *ssi;
	char name[RSND_SSI_NAME_SIZE];
1092
	int i, nr, ret;
1093

1094 1095 1096 1097 1098 1099 1100 1101 1102
	node = rsnd_ssi_of_node(priv);
	if (!node)
		return -EINVAL;

	nr = of_get_child_count(node);
	if (!nr) {
		ret = -EINVAL;
		goto rsnd_ssi_probe_done;
	}
1103

1104
	ssi	= devm_kzalloc(dev, sizeof(*ssi) * nr, GFP_KERNEL);
1105 1106 1107 1108
	if (!ssi) {
		ret = -ENOMEM;
		goto rsnd_ssi_probe_done;
	}
1109

1110 1111
	priv->ssi	= ssi;
	priv->ssi_nr	= nr;
1112

1113 1114 1115
	i = 0;
	for_each_child_of_node(node, np) {
		ssi = rsnd_ssi_get(priv, i);
1116

1117 1118
		snprintf(name, RSND_SSI_NAME_SIZE, "%s.%d",
			 SSI_NAME, i);
1119

1120
		clk = devm_clk_get(dev, name);
1121 1122
		if (IS_ERR(clk)) {
			ret = PTR_ERR(clk);
1123
			of_node_put(np);
1124 1125
			goto rsnd_ssi_probe_done;
		}
1126

1127
		if (of_get_property(np, "shared-pin", NULL))
1128
			rsnd_flags_set(ssi, RSND_SSI_CLK_PIN_SHARE);
1129 1130

		if (of_get_property(np, "no-busif", NULL))
1131
			rsnd_flags_set(ssi, RSND_SSI_NO_BUSIF);
1132 1133 1134 1135

		ssi->irq = irq_of_parse_and_map(np, 0);
		if (!ssi->irq) {
			ret = -EINVAL;
1136
			of_node_put(np);
1137 1138
			goto rsnd_ssi_probe_done;
		}
1139

J
Julia Lawall 已提交
1140
		if (of_property_read_bool(np, "pio-transfer"))
1141
			ops = &rsnd_ssi_pio_ops;
1142 1143
		else
			ops = &rsnd_ssi_dma_ops;
1144

1145
		ret = rsnd_mod_init(priv, rsnd_mod_get(ssi), ops, clk,
1146
				    rsnd_ssi_get_status, RSND_MOD_SSI, i);
1147 1148
		if (ret) {
			of_node_put(np);
1149
			goto rsnd_ssi_probe_done;
1150
		}
1151 1152

		i++;
1153 1154
	}

1155 1156 1157 1158 1159 1160
	ret = 0;

rsnd_ssi_probe_done:
	of_node_put(node);

	return ret;
1161
}
1162

1163
void rsnd_ssi_remove(struct rsnd_priv *priv)
1164 1165 1166 1167 1168
{
	struct rsnd_ssi *ssi;
	int i;

	for_each_rsnd_ssi(ssi, priv, i) {
1169
		rsnd_mod_quit(rsnd_mod_get(ssi));
1170 1171
	}
}